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Topic:Vaccination

Vaccination in horses involves the administration of antigenic material to stimulate an immune response, providing protection against specific infectious diseases. This process is a key component of preventive equine healthcare, aiming to reduce the incidence and severity of illnesses such as equine influenza, tetanus, and West Nile virus. Vaccines can be administered via various routes and may contain live attenuated, inactivated, or subunit components. The immune response elicited by vaccination helps in the development of immunological memory, enabling horses to respond more effectively upon exposure to the actual pathogen. This page compiles peer-reviewed research studies and scholarly articles that explore the development, efficacy, and safety of vaccines in equine populations.
Evaluation and comparison of an indirect fluorescent antibody test for detection of antibodies to Sarcocystis neurona, using serum and cerebrospinal fluid of naturally and experimentally infected, and vaccinated horses.
The Journal of parasitology    May 29, 2004   Volume 90, Issue 2 379-386 doi: 10.1645/GE-3263
Duarte PC, Daft BM, Conrad PA, Packham AE, Saville WJ, MacKay RJ, Barr BC, Wilson WD, Ng T, Reed SM, Gardner IA.The objectives of this study were to evaluate the accuracy of the indirect fluorescent antibody test (IFAT) using serum and cerebrospinal fluid (CSF) of horses naturally and experimentally infected with Sarcocystis neurona, to assess the correlation between serum and CSF titers, and to determine the effect of S. neurona vaccination on the diagnosis of infection. Using receiver-operating characteristic analysis, the areas under the curve for the IFAT were 0.97 (serum) and 0.99 (CSF). Sensitivity and specificity were 83.3 and 96.9% (serum, cutoff 80) and 100 and 99% (CSF, cutoff 5), respectively...
Prospects for vaccination against equine grass sickness.
Equine veterinary journal    March 25, 2004   Volume 36, Issue 2 186-191 doi: 10.2746/0425164044868710
Hedderson EJ, Newton JR.Their is both historical and modern scientific evidence to support the hypothesis that equine grass sickness (EC'S) is caused by a toxico-infectious form of botulism involving a Clostridium botulism type C toxin 1114 is produced locally within the gastrointestinal tract of affected horses (Toc her et al. 1923: Tneher 1924: Hunter a aL 1999: Hunter and anion 2001: McCarthy 2002: McCarthy a aL 201)4a1. This report concerns a meeting convened to review the current state of knowledge and possible strategies for vaccination against EGS. including historical. clinical and pathological aspects of the...
Equine grass sickness is associated with low antibody levels to Clostridium botulinum: a matched case-control study.
Equine veterinary journal    March 25, 2004   Volume 36, Issue 2 123-129 
McCarthy HE, French NP, Edwards GB, Poxton IR, Kelly DF, Payne-Johnson CE, Miller K, Proudman CJ.Equine grass sickness is a high mortality disease which, despite many years of investigation, is of unknown aetiology. Recent findings indicating that the disease is associated with Clostridium botulinum require support from an epidemiological study that recognises and controls for potential confounders, e.g. age, time of year and premises. Objective: EGS is associated with low antibody levels to C. botulinum antigens. Methods: A matched case-control study was conducted. Data were collected from 66 histologically confirmed cases of EGS and 132 premises-matched control horses. The probability o...
Use of recombinant modified vaccinia Ankara viral vectors for equine influenza vaccination.
Veterinary immunology and immunopathology    March 11, 2004   Volume 98, Issue 3-4 127-136 doi: 10.1016/j.vetimm.2003.11.004
Breathnach CC, Rudersdorf R, Lunn DP.Recombinant modified vaccinia Ankara (MVA) vectors expressing equine influenza virus genes were constructed and evaluated for use in equine vaccination. Two strains of recombinant MVA, expressing either hemagglutinin (HA) or nucleoprotein (NP) genes were constructed. Each influenza virus gene was cloned from A/equine/Kentucky/1/81 (Eq/Ky) into an MVA construction plasmid, and was introduced to the deletion III locus of the wild type MVA genome by homologous recombination. Recombinant viruses were plaque purified, and antigen expression was confirmed by immunostaining. Two ponies were primed by...
Equine vaccine for West Nile virus.
Developments in biologicals    December 18, 2003   Volume 114 221-227 
Ng T, Hathaway D, Jennings N, Champ D, Chiang YW, Chu HJ.To meet the urgent need of controlling West Nile virus (WNV) infection in the equine population, we have developed a killed WNV vaccine. A dose titration study in horses was first conducted to evaluate serum neutralization antibody responses against WNV in these animals. Horses were vaccinated intramuscularly twice with the test vaccine at low, medium and high dose, three weeks apart. Serum samples were collected periodically and were measured for serum neutralizing antibody using a plaque reduction neutralization test. Significant increases in serum neutralizing antibody were detected in all ...
Pre-infection frequencies of equine herpesvirus-1 specific, cytotoxic T lymphocytes correlate with protection against abortion following experimental infection of pregnant mares.
Veterinary immunology and immunopathology    November 1, 2003   Volume 96, Issue 3-4 207-217 doi: 10.1016/j.vetimm.2003.08.004
Kydd JH, Wattrang E, Hannant D.In general, vaccines containing inactivated equine herpesvirus-1 (EHV-1) fail to prevent abortion in pregnant mares following infection with a virulent strain of EHV-1. We have tested the hypothesis that resistance to EHV-1-induced abortion in pregnant mares is associated with high frequencies of EHV-1 specific, major histocompatibility complex (MHC) class I-restricted, cytotoxic T lymphocytes (CTL) in the circulation. To test this theory, three groups of pregnant mares were assembled with varying backgrounds of infection or vaccination in an attempt to mimic the immune status of the general p...
Mucosal co-administration of cholera toxin and influenza virus hemagglutinin-DNA in ponies generates a local IgA response.
Vaccine    June 12, 2003   Volume 21, Issue 21-22 3081-3092 doi: 10.1016/s0264-410x(03)00161-0
Soboll G, Nelson KM, Leuthner ES, Clark RJ, Drape R, Macklin MD, Swain WF, Olsen CW, Lunn DP.We have previously demonstrated that equine influenza virus hemagglutinin (HA) DNA vaccination protects ponies from challenge infection, and induces protective IgGa and IgGb responses. However, this approach does not induce a nasal IgA response. The objective of this study was to examine the value of cholera toxin (CT) administration as an adjuvant for intranasal HA DNA vaccination, and to measure protection 3 months after DNA vaccination. After an immunogenic dose of CT was determined, ponies were immunized on two occasions by intranasal administration of HA DNA and cholera toxin, or HA DNA a...
Optimising vaccination strategies in equine influenza.
Vaccine    June 12, 2003   Volume 21, Issue 21-22 2862-2870 doi: 10.1016/s0264-410x(03)00156-7
Park AW, Wood JL, Newton JR, Daly J, Mumford JA, Grenfell BT.A stochastic model of equine influenza (EI) is constructed to assess the risk of an outbreak in a Thoroughbred population at a typical flat race training yard. The model is parameterised using data from equine challenge experiments conducted by the Animal Health Trust (relating to the latent and infectious period of animals) and also published data on previous epidemics (to estimate the transmission rate for equine influenza). Using 89 ponies, an empirical relationship between pre-challenge antibody and the probability of becoming infectious is established using logistic regression. Changes in...
Efforts to pre-empt an equine influenza epidemic.
The Veterinary record    April 17, 2003   Volume 152, Issue 13 405-406 
Mumford J, Cardwell J, Daly J, Newton R.No abstract available
The effect of aging on immune responses.
The Veterinary clinics of North America. Equine practice    January 9, 2003   Volume 18, Issue 3 621-ix doi: 10.1016/s0749-0739(02)00027-5
Fermaglich DH, Horohov DW.Although vaccine manufacturers make no specific recommendations regarding the vaccination of older horses and ponies, the similarities in age-induced immunologic changes between human beings and equids suggests that similar vaccination recommendations should be followed. The need for vaccination of the older horse depends, of course, on the relative risk of exposure for the individual horse. Particular care should be taken when using attenuated vaccine products because these live agents may pose a unique risk to the older individual. Immunization with inactivated agent vaccines is likely to be...
An updated equine influenza vaccine and an equine influenza-herpesvirus combination vaccine containing an immunostim adjuvant provoke equal antibody levels in young foals throughout the primary vaccination course.
Veterinary journal (London, England : 1997)    December 31, 2002   Volume 164, Issue 3 288-291 doi: 10.1053/tvjl.2002.0712
Heldens JG, Van de Wouw JC, Van Loon AA.No abstract available
Detection and isolation of equine herpesviruses 1 and 4 from horses in Normandy: an autopsy study of tissue distribution in relation to vaccination status.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    November 27, 2002   Volume 49, Issue 8 394-399 doi: 10.1046/j.1439-0450.2002.00590.x
Taouji S, Collobert C, Gicquel B, Sailleau C, Brisseau N, Moussu C, Breuil MF, Pronost S, Borchers K, Zientara S.Equine herpesviruses type 1 and 4 (EHV-1 and EHV-4) are ubiquitous in the equine population. One of their main properties is their ability to establish life-long latent infections in their hosts even in those with natural or vaccine-induced immunity. However, effect of vaccination status on prevalence and tissue tropism was not established. In this study, EHV-1 and EHV-4 were detected by polymerase chain reaction and by classical virus isolation from neural, epithelial and lymphoid tissues collected from unvaccinated (33) or vaccinated (23) horses. The percentage of EHV-1- and EHV-4-positive h...
Animal models of papillomavirus pathogenesis.
Virus research    November 26, 2002   Volume 89, Issue 2 249-261 doi: 10.1016/s0168-1702(02)00193-4
Campo MS.Tumorigenesis due to papillomavirus (PV) infection was first demonstrated in rabbits and cattle early last century. Despite the evidence obtained in animals, the role of viruses in human cancer was dismissed as irrelevant. It took a paradigm shift in the late 1970s for some viruses to be recognised as 'tumour viruses' in humans, and in 1995, more than 60 years after Rous's first demonstration of CRPV oncogenicity, WHO officially declared that 'HPV-16 and HPV-18 are carcinogenic to humans'. Experimental studies with animal PVs have been a determining factor in this decision. Animal PVs have bee...
Reversibility of action and safety during pregnancy of immunization against porcine zona pellucida in wild mares (Equus caballus).
Reproduction (Cambridge, England). Supplement    September 11, 2002   Volume 60 197-202 
Kirkpatrick JF, Turner A.Contraceptive management of publicly valued wildlife species requires safeguards to ensure that these populations are preserved in a healthy state. In addition, reversibility of contraceptive effects and safety in pregnant animals are major concerns. A population of wild horses has been immunized against porcine zona pellucida (PZP) over a 12 year period on Assateague Island National Seashore, MD (ASIS). Mares initially received one or two 65 microg inoculations and once a year 65 microg booster inoculations, all delivered by dart. All young mares aged > 2 years were treated with PZP for 3 ...
Area under the curve calculations as a tool to compare the efficacy of equine influenza vaccines–a retrospective analysis of three independent field trials.
Journal of immunological methods    August 23, 2002   Volume 264, Issue 1-2 11-17 doi: 10.1016/s0022-1759(01)00571-3
Heldens JG, Weststrate MW, van den Hoven R.Using the area under the curve (AUC) concept as is commonly used in pharmaceutical bioequivalence studies, the bioequivalence of three equine influenza vaccines was demonstrated. A retrospective analysis was performed using this technique on data generated in three trials in which each of the three vaccines had been used. In total, data from 63 pony and horse foals were used. The AUC of the single radial hemolysis (SRH) titres against Influenza A/equi-1/Prague/56 (Pr/56), A/equi-2/Newmarket-1/93, and A/equi-2/Suffolk/89 (Suf/89) were calculated for each horse. It was concluded that calculation...
Serological responses of mares and weanlings following vaccination with an inactivated whole virus equine herpesvirus 1 and equine herpesvirus 4 vaccine.
Veterinary microbiology    July 18, 2002   Volume 88, Issue 1 13-25 doi: 10.1016/s0378-1135(02)00100-1
Foote CE, Love DN, Gilkerson JR, Whalley JM.Equine herpesvirus 1 (EHV-1) is a major cause of respiratory disease and abortion in horses worldwide. Although some vaccines have been shown experimentally to reduce disease, there are few reports of the responses to vaccination in the field. This study measured antibody responses to vaccination of 159 mares (aged 4-17 years) and 101 foals (aged 3-6 months) on a large stud farm with a killed whole virus EHV-1/4 vaccine used as per the manufacturer's recommendations. Using an EHV glycoprotein D (gD)-specific ELISA and a type-specific glycoprotein G (gG) ELISA, respectively 13.8 and 28.9% of ma...
Detection of cold-adapted vaccine-strain influenza virus using two commercial assays.
Equine veterinary journal    July 16, 2002   Volume 34, Issue 4 400-404 doi: 10.2746/042516402776249218
Adam EN, Morley PS, Chmielewski KE, Carman J, Gonzales G.Because of the contagious nature of influenza virus it is necessary to identify infected individuals after the virus is introduced into a population. The aim of this study was to characterise influenza virus detection with commercially available assays after intranasal vaccinating horses with cold-adapted influenza virus. Seven horses were vaccinated and placed with 3 unvaccinated horses. Nasal secretion samples were evaluated using 2 antigen detection assays. All 10 horses were positive in the Flu OIA assay during the study period, but only one horse was positive on one sample using the Direc...
[Smallpox and smallpox virus–200 years since the first vaccination in Norway].
Tidsskrift for den Norske laegeforening : tidsskrift for praktisk medicin, ny raekke    January 26, 2002   Volume 121, Issue 30 3546-3550 
Tryland M.In December 1801, the first vaccination against smallpox in Norway took place. Vaccine material came from Denmark, England, Ireland, and other countries; it was also obtained from a few local cowpox cases. What mattered was the effect, not the origin. Several reports indicate that variola virus itself, the cause of smallpox, was also used for human vaccination after passages through cows and horses. A vaccine institute for production of vaccine in calves was established in Kristiania in 1891. Cowpox was once a rare disease in cattle, but a total of 70,985 bovine cases were reported between 188...
Vaccination of foals and pregnant mares with Duvaxyn EHV1, 4 vaccine.
Vaccine    January 23, 2002   Volume 20, Issue 7-8 992 doi: 10.1016/s0264-410x(01)00443-1
Studdert MJ.No abstract available
Evaluation of excision, cryosurgery and local BCG vaccination for the treatment of equine sarcoids.
The Veterinary record    January 5, 2002   Volume 149, Issue 22 665-669 doi: 10.1136/vr.149.22.665
Martens A, De Moor A, Vlaminck L, Pille F, Steenhaut M.Ninety-five horses with sarcoids were subjected to three types of treatment: surgical excision (conventional or carbon dioxide laser), cryotherapy or local BCG vaccination. The type of treatment was selected on the basis of the size, location and clinical appearance of the tumours. The choice between conventional and laser excision was empirical. A successful outcome was obtained in 11 of 14 (79 per cent) of the horses treated by cryosurgery, 18 of 27 (67 per cent) treated by BCG vaccination, 18 of 22 (82 per cent) treated by conventional excision, and 20 of 28 (71 per cent) treated with a car...
Altered immune responses to a heterologous protein in ponies with heavy gastrointestinal parasite burdens.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 658-663 doi: 10.2746/042516401776249282
Edmonds JD, Horohov DW, Chapmat MR, Pourciau SS, Antoku K, Snedden K, Klei TR.This study was performed to test the hypothesis that immunity to heterologous vaccination would improve when the parasites were removed. It was also expected that parasitised ponies would exhibit a biased Th2 cytokine response to KLH immunisation. Helminth parasites are common in horses even in the era of highly effective broad-spectrum antiparasiticides. These parasites have been shown to alter the outcome to heterologous immunisation in a number of host species. The effect of gastrointestinal parasites on heterologous vaccination has not been addressed in equids. In the current study, humora...
Duration of immunity induced by an adjuvanted and inactivated equine influenza, tetanus and equine herpesvirus 1 and 4 combination vaccine.
The veterinary quarterly    January 5, 2002   Volume 23, Issue 4 210-217 doi: 10.1080/01652176.2001.9695116
Heldens JG, Kersten AJ, Weststrate MW, van den Hoven R.An adjuvanted vaccine containing inactivated equine influenza, herpesvirus antigens, and tetanus toxoid was administered to young seronegative foals of 8 months of age by deep intramuscular injection in the neck (Group A). The first two vaccinations were given 4 weeks apart. The third was administered 6 months later. Another group of foals (Group B) was vaccinated according to the same scheme at the same time with monovalent equine herpes virus (EHV) vaccine (EHV1.4) vaccine. Antibody responses to the equine influenza (single radial haemolysis; SRH) and tetanus (ToBi ELISA) components of the v...
Detection of antibodies to the nonstructural protein (NS1) of influenza A virus allows distinction between vaccinated and infected horses.
Veterinary microbiology    June 26, 2001   Volume 82, Issue 2 111-119 doi: 10.1016/s0378-1135(01)00366-2
Ozaki H, Sugiura T, Sugita S, Imagawa H, Kida H.Antibodies to the nonstructural protein (NS1) of A/equine/Miami/1/63 (H3N8) influenza virus were detected exclusively in the sera of mice experimentally infected with A/Aichi/2/68 (H3N2) and horses infected with A/equine/Kentucky/1/81 (H3N8) or A/equine/La Plata/1/93 (H3N8), but not in those of the animals immunized with the inactivated viruses, by enzyme-linked immunosorbent assay (ELISA) using a recombinant NS1 as antigen. The results indicate that the present method is useful for serological diagnosis to distinguish horses infected with equine H3 influenza viruses from those immunized with ...
Authors do not believe article provides evidence of vaccine efficacy.
American journal of veterinary research    May 9, 2001   Volume 62, Issue 5 648 
Morley PS, Townsend HG, Haines DM.No abstract available
Modelling the spread of a viral infection in equine populations managed in Thoroughbred racehorse training yards.
Preventive veterinary medicine    October 6, 2000   Volume 47, Issue 1-2 61-77 doi: 10.1016/s0167-5877(00)00161-6
de la Rua-Domenech R, Reid SW, González-Zariquiey AE, Wood JL, Gettinby G.A Monte Carlo model that simulates the management life cycle of a horse population in training on a Thoroughbred flat racing yard (i.e. stable) was developed for computer implementation. Each horse was characterised by several state variables. Discrete events at the horse level were triggered stochastically to reflect uncertainty about some input assumptions and heterogeneity of the horse population in a particular yard. This mathematical model was subsequently used to mimic the spread of equine influenza (EI) within a typical yard following the introduction of one or several infectious horses...
Application of a type-specific enzyme-linked immunosorbent assay for equine herpesvirus types 1 and 4 (EHV-1 and -4) to horse populations inoculated with inactivated EHV-1 vaccine.
The Journal of veterinary medical science    August 17, 2000   Volume 62, Issue 7 687-691 doi: 10.1292/jvms.62.687
Yasunaga S, Maeda K, Matsumura T, Kondo T, Kai K.A type-specific enzyme-linked immunosorbent assay (ELISA) using equine herpesvirus types 1 (EHV-1) and 4 (EHV-4) glycoprotein G was applied for sero-epizootiology of EHV infections in Japan. Recently, an inactivated EHV-1 vaccine has been administered to racehorses for prevention of upper respiratory disease. To examine the effect of the vaccination on the result of the ELISA, 6 horses were experimentally inoculated three times intramuscularly or intranasally with inactivated EHV-1 vaccine. Sera collected from these horses were used to the type-specific ELISA and complement-fixation (CF) test....
Risk factors for equine influenza serum antibody titres in young thoroughbred racehorses given an inactivated vaccine.
Preventive veterinary medicine    July 6, 2000   Volume 46, Issue 2 129-141 doi: 10.1016/s0167-5877(00)00144-6
Newton JR, Lakhani KH, Wood JL, Baker DJ.Young Thoroughbred racehorses (222 yearlings entering training and 246 2-year-old horses already in training) from eight flat-training yards in Newmarket, UK were used to monitor serological responses to vaccination with an inactivated influenza virus vaccine. Blood samples taken prior to and after vaccination were tested by single radial haemolysis (SRH) to determine antibody titres (expressed as area of haemolysis in mm(2)). Prior to vaccination, yearlings had mean antibody titres (64+/-4 mm(2)) that were approximately half of those of 2-year-olds (115+/-3 mm(2)) and 89% of yearlings and 73%...
[Veterinary service and supervision of equine competitions].
DTW. Deutsche tierarztliche Wochenschrift    April 25, 2000   Volume 107, Issue 3 107-109 
Schüle E.Because of the growing interest in animal health and welfare in breeding and sport--specially in the horse--the regulation of the German Riding Association (FN) was updated. The result--the LPO 2000--refer more functions to the veterinarian. At first the permanent presence of the vet is necessary, at second he controls the correct, new installed vaccination against influenza-virus. The functions of vet-check, general horse-control and doping are wide up in number and consultation. For this the veterinarian must decree about much experience and good preparation. The organisations of the veterin...
Equine vaccination.
Journal of veterinary internal medicine    April 20, 2000   Volume 14, Issue 2 221-222 
Horohov DW, Lunn DP, Townsend HG, Wilson D.Equine infectious disease remains a constant and important threat to the health of domesticated horses. Vaccination plays a critical role in protecting against such disease, but at the present time the efficacy of some equine vaccination strategies is in doubt. The best strategy for resolving these concerns is an improved knowledge of the immunologic basis of successful vaccination, combined with the appropriate integration of effective vaccines into well-designed disease control policies.
Equine vaccination.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 199-viii doi: 10.1016/s0749-0739(17)30127-x
Lunn DP, Townsend HG.Equine infectious disease remains a constant and important threat to the health of domesticated horses. Vaccination plays a critical role in protecting against such disease, but at the present time the efficacy of some equine vaccination strategies is in doubt. The best strategy for resolving these concerns is an improved knowledge of the immunologic basis of successful vaccination, combined with the appropriate integration of effective vaccines into well-designed disease control policies.
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